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This book is devoted to the quantitative physical modeling of
subduction and subduction-related processes. It presents a coherent
description of the modeling method (including similarity criteria,
and a novel applied experimental technique), results from model
experiments, theoretical analysis of results on the basis of
continuum mechanics, and their geodynamic interpretation.
Subduction is modeled in general as well as applied to particular
regions using both 2-D and 3-D approaches, with both slab-push and
slab-pull driving forces. The modeling covers all stages from
subduction initiation to death', different regimes of subduction
producing back arc extension and compression, blocking of
subduction and jumps of subduction zone, arc-continent collision
and continental subduction. This work is for geologists and
geophysicists interested in geodynamics of the convergent plate
boundaries and in mechanics of the lithosphere.
This book is devoted to the quantitative physical modeling of
subduction and subduction-related processes. It presents a coherent
description of the modeling method (including similarity criteria,
and a novel applied experimental technique), results from model
experiments, theoretical analysis of results on the basis of
continuum mechanics, and their geodynamic interpretation.
Subduction is modeled in general as well as applied to particular
regions using both 2-D and 3-D approaches, with both slab-push and
slab-pull driving forces. The modeling covers all stages from
subduction initiation to death', different regimes of subduction
producing back arc extension and compression, blocking of
subduction and jumps of subduction zone, arc-continent collision
and continental subduction. This work is for geologists and
geophysicists interested in geodynamics of the convergent plate
boundaries and in mechanics of the lithosphere.
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